Beverage processing and mixing mechanism

By setting up a bucket-type shovel seat and corrugated agitator rod at the agitator shaft of the beverage mixer, a vortex is formed, and a high-pressure fluid is provided with a liquid pump and a bent discharge pipe for rapid impact, the problem of low mixing efficiency in the prior art is solved and efficient mixing of beverage raw materials is achieved.

CN222885610UActive Publication Date: 2025-05-20JIAXING ALOE SOURCE BIOTECHNOLOGY CO LTD
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Patent Information

Application Number
CN202421863009.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-02
Publication Date
2025-05-20
Estimated Expiration
2034-08-02

AI Technical Summary

Technical Problem

The existing beverage mixers have poor results when stirring liquids, and the mixing structure does not have enough flushing properties on beverage raw materials, resulting in low mixing efficiency.

Method used

The liquid agitating structure is set up at the mixing shaft of the mixer, including a bucket-type shovel seat and a corrugated agitating rod. The drink raw materials are driven to form a vortex through the bucket-type shovel seat, and the corrugated agitating rod makes the vortex more chaotic, thereby achieving efficient mixing. At the same time, high-pressure fluid is provided by using a liquid pump and a bent discharge pipe, and the vortex current is thrust-type impacted through the discharge pipe, further improving the mixing efficiency.

Benefits of technology

Through vortex beat and rapid impact, efficient mixing of beverage raw materials is achieved, significantly improving mixing efficiency, and solving the problem of low mixing efficiency in the prior art.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a beverage processing and mixing mechanism which comprises a mixing machine body and a stirring shaft, the stirring shaft driven by a motor is vertically arranged in a tank body of the mixing machine body, the beverage processing and mixing mechanism further comprises a bucket type shovel seat, an extension plate, a side vertical plate, a bent calandria, a bent suction pipe and a liquid pump, and a liquid stirring structure is arranged at the stirring shaft of the mixing machine body. According to the liquid stirring structure, a special-shaped bucket type shovel seat is used for stirring beverage raw materials into vortex at a stirring shaft, and then an extension plate is arranged outside the bucket type shovel seat to drive a corrugated stirring rod to stir the vortex, so that the circulation state of the vortex is relatively disordered; a liquid pump with a liquid flushing structure is arranged at a tank body of the mixing machine body, raw material liquid in the bottom space of the mixing machine body can be pumped through a bent pumping pipe, then high-pressure fluid is provided for the interior of a containing cylinder through a bent discharging pipe, and the high-pressure fluid in the containing cylinder is jetted into vortex stirred by a stirring shaft at a jetting pipe to carry out torrent type impact; and high-efficiency mixing during raw material mixing in beverage processing is realized.
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Description

Technical Field

[0001] The utility model relates to the technical field of beverage mixing and processing, in particular to a beverage processing and mixing mechanism. Background Technique

[0002] A beverage mixer is a device used to mix beverage raw materials. When the processing raw materials of the beverage are poured into the beverage mixer, the motor of the beverage mixer drives the stirring shaft to rotate. The stirring blades arranged outside the stirring shaft can stir the beverage processing raw materials in a rotating state. Under the high-speed stirring of the stirring blades, the beverage processing raw materials are mixed.

[0003] When the mixer for beverage processing in the prior art mixes beverage raw materials, a slant ring body or a blade rack type stirring blade is usually arranged at the stirring shaft of the mixer to stir and mix the beverage processing raw materials. These stirring structures have a poor stirring and surging effect on the liquid in the beverage raw materials. At the same time, the simple rack body has a poor mixing effect on the stirred beverage raw materials, resulting in a low efficiency of beverage processing and mixing. For this reason, we propose a beverage processing and mixing mechanism. Content of the Utility Model

[0004] The main purpose of the utility model is to provide a beverage processing and mixing mechanism. A liquid stirring structure is arranged at the stirring shaft of the mixer body. The liquid stirring structure uses a special-shaped bucket-type shovel seat at the stirring shaft to stir the beverage raw materials into a vortex. Then, there is an extension plate outside the bucket-type shovel seat with a corrugated stirring rod to stir and beat the vortex, making the flow state of the vortex relatively chaotic, so as to realize the efficient mixing of raw materials during beverage processing in the way of vortex stirring and beating. And there is a liquid pump with a liquid flushing structure at the tank body of the mixer body, which can extract the raw material liquid in the bottom space of the mixer body through a bent suction pipe, and then provide high-pressure fluid to the cylinder through a bent discharge pipe. The high-pressure fluid in the cylinder is ejected towards the vortex stirred by the stirring shaft at the discharge pipe for jet impact, so that the beverage raw materials can be better stirred and impacted and mixed, realizing the efficient mixing of beverage processing and mixing raw materials, and effectively solving the problems in the background technique.

[0005] To achieve the above purpose, the technical solution adopted by the utility model is as follows:

[0006] A beverage processing and mixing mechanism comprises a mixer body and a stirring shaft, wherein a stirring shaft driven by a motor is vertically installed in a tank body of the mixer body, and further comprises a bucket-type shovel seat, an extension plate, a side plate, a bent row pipe, a bent suction pipe and a liquid pump, wherein the bucket-type shovel seat is welded at three points outside the shaft rod extending into the mixer body, and the extension plate is vertically arranged and welded on the outer seat wall surface of the bucket-type shovel seat away from the stirring shaft, and the side plate is welded on the lower plate surface of the extension plate away from the bucket-type shovel seat, a corrugated stirring rod is welded between the side plate and the lower plate body of the extension plate, and the tank body surface of the mixer body is provided with a plurality of shovel seats. The surface is staggered with a clamping hole A and a clamping hole B, and the holes of the clamping hole A and the clamping hole B respectively have a bent discharge pipe and a bent extraction pipe extending into the mixer body. The outer tube body of the bent discharge pipe and the bent extraction pipe extending out of the mixer body are respectively connected to the pump pipe flanges at the drainage end and the water inlet end of the liquid pump. The pipe openings of the bent discharge pipe extending into the mixer body are mutually welded with a container, and the surface of the container body facing the stirring shaft is welded with a discharge pipe for ejecting liquid. A support plate for supporting the liquid pump is welded outside the tank body of the mixer body, and a guide hole is opened through the surface of the bucket shovel seat on one side of the extension plate.

[0007] Furthermore, flanges are welded to the outer tubes of the bent discharge pipe and the bent extraction pipe extending out of the mixer body, and the flange of the bent discharge pipe is locked with bolts to the pump pipe flange at the discharge end of the liquid pump, and the flange of the bent extraction pipe is locked with bolts to the pump pipe flange at the water inlet end of the liquid pump;

[0008] By adopting the above technical solution, the bent discharge pipe and the bent extraction pipe are flange-connected at the discharge end and water inlet end of the liquid pump by flange plates and bolts, respectively, so that the liquid pump can extract the beverage liquid in the mixer body from the bent extraction pipe and send it into the bent discharge pipe.

[0009] Furthermore, the hole wall of the clamping hole A is welded and fixed to the outer tube wall of the bent row tube;

[0010] By adopting the above technical solution, the bent tube and the clamp hole A can be welded to seal the cavity.

[0011] Furthermore, the hole wall of the clamping hole B is welded and fixed to the outer tube wall of the bent pumping tube;

[0012] By adopting the above technical solution, the hole here can be blocked after the bent pipe is welded to the clamp hole B.

[0013] Furthermore, two groups of corrugated stirring rods are welded between the side plate and the extension plate;

[0014] By adopting the above technical solution, there are more corrugated stirring rods between the side plate and the extension plate, which can better stir the beverage raw materials.

[0015] Furthermore, a spacing distance is preset between the ejection pipe of the container and the side plate;

[0016] By adopting the above technical solution, the side vertical plate will not hit the ejection pipe of the receiving cylinder when rotating.

[0017] Compared with the prior art, the utility model has the following beneficial effects:

[0018] The utility model is provided with a liquid stirring structure at the stirring shaft of the mixer body. The liquid stirring structure uses a special-shaped bucket-type shovel seat at the stirring shaft to stir the beverage raw materials into a vortex, and then there is an extension plate outside the bucket-type shovel seat to drive the corrugated stirring rod to stir the vortex, making the flow state of the vortex relatively chaotic, so as to realize the efficient mixing of raw materials during beverage processing in the way of vortex stirring;

[0019] And there is a liquid pump of the liquid flushing structure at the tank body of the mixer body, which can extract the raw material liquid in the bottom space of the mixer body through the bent suction pipe, and then provide high-pressure fluid to the receiving cylinder through the bent discharge pipe. The high-pressure fluid in the receiving cylinder is ejected at the ejection pipe into the vortex stirred by the stirring shaft for jet impact, so that the beverage raw materials can be better stirred and impacted for mixing, realizing the efficient mixing of the mixed raw materials during beverage processing. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] Figure 1 It is a schematic diagram of the overall structure of a beverage processing and mixing mechanism of the utility model.

[0021] Figure 2 It is an exploded view of the liquid stirring structure of a beverage processing and mixing mechanism of the utility model.

[0022] Figure 3 It is an exploded view of the liquid flushing structure of a beverage processing and mixing mechanism of the utility model.

[0023] In the figure: 1. Mixer body; 2. Stirring shaft; 3. Bucket-type shovel seat; 4. Extension plate; 5. Side vertical plate; 6. Corrugated stirring rod; 7. Hole A; 8. Hole B; 9. Bent discharge pipe; 10. Bent suction pipe; 11. Flange; 12. Liquid pump; 13. Receiving cylinder; 14. Ejection pipe; 15. Support plate; 16. Guide hole. DETAILED DESCRIPTION OF THE INVENTION

[0024] In order to make the technical means, creative features, achieved purposes and functions of the utility model easy to understand, the utility model will be further described below in conjunction with specific embodiments.

[0025] Such as Figures 1-3As shown in the figure, a beverage processing and mixing mechanism includes a mixer body 1 and a stirring shaft 2. The stirring shaft 2 driven by a motor is vertically installed in the tank of the mixer body 1. It also includes a bucket-type shovel seat 3, an extension plate 4, a side vertical plate 5, a bent drain pipe 9, a bent suction pipe 10 and a liquid pump 12. The bucket-type shovel seat 3 is welded at three points on the outer shaft of the stirring shaft 2 extending into the mixer body 1. The outer wall surface of the bucket-type shovel seat 3 away from the stirring shaft 2 is vertically arranged and welded with an extension plate 4. The lower plate surface of the extension plate 4 away from the bucket-type shovel seat 3 is welded with a side vertical plate 5. A corrugated stirring rod 6 is welded between the lower plate bodies of the side vertical plate 5 and the extension plate 4. The tank surface of the mixer body 1 is misaligned with a card hole A7 and a card hole B8. The bent drain pipe 9 and the bent suction pipe 10 extend into the mixer body 1 in the holes of the card hole A7 and the card hole B8 respectively. The outer pipe bodies of the bent drain pipe 9 and the bent suction pipe 10 extending out of the mixer body 1 are respectively flange-connected to the drainage end and the water inlet end pump pipes of the liquid pump 12 by pump pipe flanges. The pipe orifice of the bent drain pipe 9 extending into the mixer body 1 is welded and communicated with a receiving cylinder 13. The cylinder surface of the receiving cylinder 13 facing the stirring shaft 2 is arranged and welded with a discharge pipe 14 for ejecting liquid. A support plate 15 for supporting the liquid pump 12 is welded outside the tank of the mixer body 1. A lead hole 16 is penetrated and opened on the surface of the bucket-type shovel seat 3 on one side of the extension plate 4.

[0026] Among them, flange plates 11 are welded at the outer pipe bodies of the bent drain pipe 9 and the bent suction pipe 10 extending out of the mixer body 1. The flange plate 11 of the bent drain pipe 9 and the pump pipe flange at the drainage end of the liquid pump 12 are bolt-locked; the flange plate 11 of the bent suction pipe 10 and the pump pipe flange at the water inlet end of the liquid pump 12 are bolt-locked;

[0027] By adopting the above technical solution, the bent drain pipe 9 and the bent suction pipe 10 are respectively flange-connected to the pump pipe flanges at the drainage end and the water inlet end of the liquid pump 12 by using flange plates 11 and bolts, which is convenient for the liquid pump 12 to pump the beverage liquid in the mixer body 1 from the bent suction pipe 10 into the bent drain pipe 9.

[0028] Among them, the hole wall of the card hole A7 is welded and fixed to the outer pipe wall of the bent drain pipe 9;

[0029] By adopting the above technical solution, after the bent drain pipe 9 is welded to the card hole A7, the hole cavity here can be blocked.

[0030] Among them, the hole wall of the card hole B8 is welded and fixed to the outer pipe wall of the bent suction pipe 10;

[0031] By adopting the above technical solution, after the bent suction pipe 10 is welded to the card hole B8, the hole cavity here can be blocked.

[0032] Among them, two groups of corrugated stirring rods 6 are welded between the side vertical plate 5 and the extension plate 4;

[0033] By adopting the above technical solution, there are a plurality of corrugated stirring rods 6 between the side vertical plate 5 and the extension plate 4, which can better stir the beverage raw materials.

[0034] Wherein, a spacing distance is preset between the ejection pipe 14 of the receiving cylinder 13 and the side vertical plate 5;

[0035] By adopting the above technical solution, when the side vertical plate 5 rotates, it will not hit the ejection pipe 14 of the receiving cylinder 13.

[0036] It should be noted that the present utility model is a beverage processing and mixing mechanism. A liquid stirring structure is arranged at the stirring shaft 2 of the mixer body 1, and a liquid flushing structure is arranged outside the tank body of the mixer body 1. After the bucket-shaped shoveling seats 3 of the liquid stirring structure are welded at three points outside the stirring shaft 2, a side vertical plate 5 and corrugated stirring rods 6 are welded to the outer seat plate of the bucket-shaped shoveling seats 3, and the edges of the corrugated stirring rods 6 are welded at the side vertical plate 5 to obtain support. At the same time, a support plate 15 is arranged outside the mixer body 1 to install a liquid pump 12. The bent discharge pipe 9 and the bent suction pipe 10 are respectively connected by flanges at the pump pipe flanges at the drainage end and the water inlet end of the liquid pump 12. When beverage processing raw materials are poured into the mixer body 1, liquids and sweetening additives and other materials in the raw materials can be uniformly received by the mixer body 1. At this time, the motor of the mixer body 1 drives the stirring shaft 2 to rotate, and the stirring shaft 2 drives the three groups of bucket-shaped shoveling seats 3 to stir the beverage raw material liquid in the mixer body 1 with the inner concave corner cavity to form a vortex. At this time, the bucket-shaped shoveling seats 3 cooperate with the extension plate 4 and the side vertical plate 5 and the corrugated stirring rods 6 to strike the beverage raw materials in the vortex. At the same time, there are lead holes 16 at the seat walls of the bucket-shaped shoveling seats 3, which can provide a position for screening the flow, so that the flow state of the beverage raw material vortex is relatively chaotic. At this time, the liquid pump 12 can extract the raw material liquid in the bottom space of the mixer body 1 through the bent suction pipe 10, and then provide high-pressure fluid to the receiving cylinder 13 through the bent discharge pipe 9. The high-pressure fluid in the receiving cylinder 13 is ejected at the ejection pipe 14 into the vortex stirred by the stirring shaft 2 for jet impact, so that the beverage raw materials can be better stirred and mixed.

[0037] It should be noted that the present utility model is a beverage processing and mixing mechanism. The components in the present utility model are all components known to those skilled in the art, and their structures and principles can all be known by those skilled in the art through technical manuals or through conventional experimental methods.

[0038] The above shows and describes the basic principles, main features and advantages of the present utility model. Those skilled in the art should understand that the present utility model is not limited by the above embodiments. What is described in the above embodiments and the specification only illustrates the principle of the present utility model. Without departing from the spirit and scope of the present utility model, the present utility model will have various changes and improvements, and these changes and improvements all fall within the scope of the present utility model claimed. The scope of protection claimed by the present utility model is defined by the appended claims and their equivalents.

Claims

1. A beverage processing and mixing mechanism, comprising a mixer body (1) and a stirring shaft (2), wherein the stirring shaft (2) driven by a motor is vertically installed in the tank of the mixer body (1), characterized in that: The mixer also comprises a bucket shovel seat (3), an extension plate (4), a side drop plate (5), a bent row pipe (9), a bent suction pipe (10) and a liquid pump (12); the bucket shovel seat (3) is welded at three points outside the shaft of the mixing shaft (2) extending into the mixer body (1); the extension plate (4) is vertically arranged and welded to the outer seat wall surface of the bucket shovel seat (3) away from the mixing shaft (2); the side drop plate (5) is welded to the lower plate surface of the extension plate (4) away from the bucket shovel seat (3); a corrugated stirring rod (6) is welded between the side drop plate (5) and the lower plate body of the extension plate (4); a clamping hole A (7) and a clamping hole B (8) are staggered on the surface of the tank body of the mixer body (1); and the clamping hole A (7) and the clamping hole B (8) are The hole cavity of the mixer body (1) includes a bent discharge pipe (9) and a bent extraction pipe (10) extending into the mixer body (1). The bent discharge pipe (9) and the bent extraction pipe (10) extend out of the outer tube body of the mixer body (1) and are respectively connected to the pump pipe flanges of the water discharge end and the water inlet end of the liquid pump (12). The pipe openings of the bent discharge pipe (9) extending into the mixer body (1) are mutually welded with a container tube (13), and a discharge pipe (14) for ejecting liquid is arranged and welded on the surface of the container tube (13) facing the stirring shaft (2). A support plate (15) for supporting the liquid pump (12) is welded outside the tank body of the mixer body (1), and a guide hole (16) is opened through the surface of the bucket shovel seat (3) on one side of the extension plate (4).

2. A beverage processing and mixing mechanism according to claim 1, characterized in that: The flanges (11) are welded to the outer tubes of the bent discharge pipe (9) and the bent extraction pipe (10) extending out of the mixer body (1), and the flanges (11) of the bent discharge pipe (9) and the pump pipe flange at the discharge end of the liquid pump (12) are locked with bolts, and the flanges (11) of the bent extraction pipe (10) and the pump pipe flange at the water inlet end of the liquid pump (12) are locked with bolts.

3. A beverage processing and mixing mechanism according to claim 1, characterized in that: The hole wall of the clamping hole A (7) is welded and fixed to the outer tube wall of the bent row tube (9).

4. A beverage processing and mixing mechanism according to claim 1, characterized in that: The hole wall of the clamping hole B (8) is welded and fixed to the outer tube wall of the bent pumping tube (10).

5. A beverage processing and mixing mechanism according to claim 1, characterized in that: Two groups of the corrugated stirring rods (6) are welded between the side hanging plate (5) and the extension plate (4).

6. A beverage processing and mixing mechanism according to claim 1, characterized in that: A spacing distance is preset between the ejection pipe (14) of the container (13) and the side plate (5).